Size dependence of ¹³C nuclear spin-lattice relaxation in micro- and nanodiamonds

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Size dependence of physical properties of nanodiamond particles is of crucial importance for various applications in which defect density and location as well as relaxation processes play a significant role. In this work, the impact of defects induced by milling of micron-sized synthetic diamonds was studied by magnetic resonance techniques as a function of the particle size. EPR and 13C NMR studies of highly purified commercial synthetic micro- and nanodiamonds were done for various fractions separated by sizes. Noticeable acceleration of 13C nuclear spin-lattice relaxation with decreasing particle size was found. We showed that this effect is caused by the contribution to relaxation coming from the surface paramagnetic centers induced by sample milling. The developed theory of the spin-lattice relaxation for such a case shows good compliance with the experiment.

Tytuł
Size dependence of ¹³C nuclear spin-lattice relaxation in micro- and nanodiamonds
Twórca
Panich Alexander M.
Słowa kluczowe
micro- and nanodiaments; NMR 13C
Słowa kluczowe
mikro- i nanodiamenty
Współtwórca
Serheiev Mykola ORCID 0000-0002-1634-8760
Shames Alexander I.
Osipov V. Yu
Boudou J. P.
Goren Shaul D.
Data
2015
Typ zasobu
artykuł
Identyfikator zasobu
DOI 10.1088/0953-8984/27/7/072203
Źródło
Journal of Physics: Condensed Matter, 2015, vol. 27 no. 7, 072203
Język
angielski
Prawa autorskie
CC BY CC BY
Kategorie
Publikacje pracowników US
Data udostępnienia12 sie 2022, 15:11:28
Data mod.12 sie 2022, 15:11:28
DostępPubliczny
Aktywnych wyświetleń0